Practical one-shot data-driven design of fractional-order PID controller: Fictitious reference signal approach

IF 6.3 2区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS ISA transactions Pub Date : 2024-07-09 DOI:10.1016/j.isatra.2024.07.001
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Abstract

This study proposes a one-shot data-driven tuning method for a fractional-order proportional-integral-derivative (FOPID) controller. The proposed method tunes the FOPID controller in the model-reference control formulation. A loss function is defined to evaluate the match between a given reference model and the closed-loop response while explicitly considering the closed-loop stability. A loss function value is based on the fictitious reference signal computed using the input/output data. Model matching is achieved via loss function minimization. The proposed method is simple and practical: it needs only one-shot input/output data of a plant (no plant model required), considers the bounded-input bounded-output stability of the closed-loop system from a bounded reference input to a bounded output, and automatically determines the appropriate parameter value via optimization. Numerical simulations show that the proposed approach facilitates good control performance, and destabilization can be avoided even if perfect model matching is unachievable.

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分数阶 PID 控制器的实用单次数据驱动设计:虚构参考信号法
本研究提出了一种分数阶比例-积分-导数(FOPID)控制器的单次数据驱动调谐方法。所提方法在模型参考控制公式中对 FOPID 控制器进行了调整。在明确考虑闭环稳定性的同时,定义了一个损失函数来评估给定参考模型与闭环响应之间的匹配度。损失函数值基于使用输入/输出数据计算的虚构参考信号。通过损失函数最小化实现模型匹配。所提出的方法简单实用:它只需要工厂的一次输入/输出数据(不需要工厂模型),考虑从有界参考输入到有界输出的闭环系统的有界输入有界输出稳定性,并通过优化自动确定适当的参数值。数值模拟表明,所提出的方法有助于实现良好的控制性能,即使无法实现完美的模型匹配,也能避免失稳。
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来源期刊
ISA transactions
ISA transactions 工程技术-工程:综合
CiteScore
11.70
自引率
12.30%
发文量
824
审稿时长
4.4 months
期刊介绍: ISA Transactions serves as a platform for showcasing advancements in measurement and automation, catering to both industrial practitioners and applied researchers. It covers a wide array of topics within measurement, including sensors, signal processing, data analysis, and fault detection, supported by techniques such as artificial intelligence and communication systems. Automation topics encompass control strategies, modelling, system reliability, and maintenance, alongside optimization and human-machine interaction. The journal targets research and development professionals in control systems, process instrumentation, and automation from academia and industry.
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